podman

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Published: Jun 10, 2022 License: Apache-2.0

README

PODMAN logo

Podman: A tool for managing OCI containers and pods

Podman (the POD MANager) is a tool for managing containers and images, volumes mounted into those containers, and pods made from groups of containers. Podman runs containers on Linux, but can also be used on Mac and Windows systems using a Podman-managed virtual machine. Podman is based on libpod, a library for container lifecycle management that is also contained in this repository. The libpod library provides APIs for managing containers, pods, container images, and volumes.

  • Latest Version: 4.1.0

    • Latest Remote client for Windows
    • Latest Remote client for macOS
    • Latest Static Remote client for Linux
  • Continuous Integration: Build Status

  • GoDoc: GoDoc

Overview and scope

At a high level, the scope of Podman and libpod is the following:

  • Support for multiple container image formats, including OCI and Docker images.
  • Full management of those images, including pulling from various sources (including trust and verification), creating (built via Containerfile or Dockerfile or committed from a container), and pushing to registries and other storage backends.
  • Full management of container lifecycle, including creation (both from an image and from an exploded root filesystem), running, checkpointing and restoring (via CRIU), and removal.
  • Full management of container networking, using CNI, Netavark, and slirp4netns
  • Support for pods, groups of containers that share resources and are managed together.
  • Support for running containers and pods without root or other elevated privileges.
  • Resource isolation of containers and pods.
  • Support for a Docker-compatible CLI interface, which can both run containers locally and on remote systems.
  • No manager daemon, for improved security and lower resource utilization at idle.
  • Support for a REST API providing both a Docker-compatible interface and an improved interface exposing advanced Podman functionality.
  • Support for running on Windows and Mac via virtual machines run by podman machine.

Roadmap

  1. A fully-featured GUI frontend for podman machine
  2. Further improvements to podman generate kube and podman play kube
  3. Improvements to Pods, including the addition of pod-level resource limits

Communications

If you think you've identified a security issue in the project, please DO NOT report the issue publicly via the GitHub issue tracker, mailing list, or IRC. Instead, send an email with as many details as possible to security@lists.podman.io. This is a private mailing list for the core maintainers.

For general questions and discussion, please use Podman's channels.

For discussions around issues/bugs and features, you can use the GitHub issues and PRs tracking system.

There is also a mailing list at lists.podman.io. You can subscribe by sending a message to podman-join@lists.podman.io with the subject subscribe.

Rootless

Podman can be easily run as a normal user, without requiring a setuid binary. When run without root, Podman containers use user namespaces to set root in the container to the user running Podman. Rootless Podman runs locked-down containers with no privileges that the user running the container does not have. Some of these restrictions can be lifted (via --privileged, for example), but rootless containers will never have more privileges than the user that launched them. If you run Podman as your user and mount in /etc/passwd from the host, you still won't be able to change it, since your user doesn't have permission to do so.

Almost all normal Podman functionality is available, though there are some shortcomings. Any recent Podman release should be able to run rootless without any additional configuration, though your operating system may require some additional configuration detailed in the install guide.

A little configuration by an administrator is required before rootless Podman can be used, the necessary setup is documented here.

Out of scope

  • Specialized signing and pushing of images to various storage backends. See Skopeo for those tasks.
  • Support for the Kubernetes CRI interface for container management. The CRI-O daemon specializes in that.

OCI Projects Plans

Podman uses OCI projects and best of breed libraries for different aspects:

  • Runtime: We use the OCI runtime tools to generate OCI runtime configurations that can be used with any OCI-compliant runtime, like crun and runc.
  • Images: Image management uses the containers/image library.
  • Storage: Container and image storage is managed by containers/storage.
  • Networking: Networking support through use of Netavark and Aardvark. Support for CNI is also available. Rootless networking is handled via slirp4netns.
  • Builds: Builds are supported via Buildah.
  • Conmon: Conmon is a tool for monitoring OCI runtimes, used by both Podman and CRI-O.
  • Seccomp: A unified Seccomp policy for Podman, Buildah, and CRI-O.

Podman Information for Developers

For blogs, release announcements and more, please checkout the podman.io website!

Installation notes Information on how to install Podman in your environment.

OCI Hooks Support Information on how Podman configures OCI Hooks to run when launching a container.

Podman API Documentation on the Podman REST API.

Podman Commands A list of the Podman commands with links to their man pages and in many cases videos showing the commands in use.

Podman Troubleshooting Guide A list of common issues and solutions for Podman.

Podman Usage Transfer Useful information for ops and dev transfer as it relates to infrastructure that utilizes Podman. This page includes tables showing Docker commands and their Podman equivalent commands.

Tutorials Tutorials on using Podman.

Remote Client A brief how-to on using the Podman remote client.

Basic Setup and Use of Podman in a Rootless environment A tutorial showing the setup and configuration necessary to run Rootless Podman.

Release Notes Release notes for recent Podman versions.

Contributing Information about contributing to this project.

Buildah and Podman relationship

Buildah and Podman are two complementary open-source projects that are available on most Linux platforms and both projects reside at GitHub.com with Buildah here and Podman here. Both, Buildah and Podman are command line tools that work on Open Container Initiative (OCI) images and containers. The two projects differentiate in their specialization.

Buildah specializes in building OCI images. Buildah's commands replicate all of the commands that are found in a Dockerfile. This allows building images with and without Dockerfiles while not requiring any root privileges. Buildah’s ultimate goal is to provide a lower-level coreutils interface to build images. The flexibility of building images without Dockerfiles allows for the integration of other scripting languages into the build process. Buildah follows a simple fork-exec model and does not run as a daemon but it is based on a comprehensive API in golang, which can be vendored into other tools.

Podman specializes in all of the commands and functions that help you to maintain and modify OCI images, such as pulling and tagging. It also allows you to create, run, and maintain those containers created from those images. For building container images via Dockerfiles, Podman uses Buildah's golang API and can be installed independently from Buildah.

A major difference between Podman and Buildah is their concept of a container. Podman allows users to create "traditional containers" where the intent of these containers is to be long lived. While Buildah containers are really just created to allow content to be added back to the container image. An easy way to think of it is the buildah run command emulates the RUN command in a Dockerfile while the podman run command emulates the docker run command in functionality. Because of this and their underlying storage differences, you can not see Podman containers from within Buildah or vice versa.

In short, Buildah is an efficient way to create OCI images while Podman allows you to manage and maintain those images and containers in a production environment using familiar container cli commands. For more details, see the Container Tools Guide.

Podman Hello

$ podman run quay.io/podman/hello
Trying to pull quay.io/podman/hello:latest...
Getting image source signatures
Copying blob a6b3126f3807 done
Copying config 25c667d086 done
Writing manifest to image destination
Storing signatures
!... Hello Podman World ...!

         .--"--.
       / -     - \
      / (O)   (O) \
   ~~~| -=(,Y,)=- |
    .---. /`  \   |~~
 ~/  o  o \~~~~.----. ~~
  | =(X)= |~  / (O (O) \
   ~~~~~~~  ~| =(Y_)=-  |
  ~~~~    ~~~|   U      |~~

Project:   https://github.com/containers/podman
Website:   https://podman.io
Documents: https://docs.podman.io
Twitter:   @Podman_io

Podman formerly offered a Varlink-based API for remote management of containers. However, this API was replaced by the REST API. Varlink support has been removed as of the 3.0 release. For more details, you can see this blog.

Directories

Path Synopsis
cmd
podman/parse
nolint most of these validate and parse functions have been taken from projectatomic/docker and modified for cri-o
nolint most of these validate and parse functions have been taken from projectatomic/docker and modified for cri-o
hack
The libpod library is not stable and we do not support use cases outside of this repository.
The libpod library is not stable and we do not support use cases outside of this repository.
pkg
api/handlers/swagger
Package swagger defines the payloads used by the Podman API - errors.go: declares the errors used in the API.
Package swagger defines the payloads used by the Podman API - errors.go: declares the errors used in the API.
api/server
Package server supports a RESTful API for the Libpod library This documentation describes the Podman v2.x+ RESTful API.
Package server supports a RESTful API for the Libpod library This documentation describes the Podman v2.x+ RESTful API.
bindings/containers
Code generated by go generate; DO NOT EDIT.
Code generated by go generate; DO NOT EDIT.
bindings/generate
Code generated by go generate; DO NOT EDIT.
Code generated by go generate; DO NOT EDIT.
bindings/images
Code generated by go generate; DO NOT EDIT.
Code generated by go generate; DO NOT EDIT.
bindings/manifests
Code generated by go generate; DO NOT EDIT.
Code generated by go generate; DO NOT EDIT.
bindings/network
Code generated by go generate; DO NOT EDIT.
Code generated by go generate; DO NOT EDIT.
bindings/play
Code generated by go generate; DO NOT EDIT.
Code generated by go generate; DO NOT EDIT.
bindings/pods
Code generated by go generate; DO NOT EDIT.
Code generated by go generate; DO NOT EDIT.
bindings/secrets
Code generated by go generate; DO NOT EDIT.
Code generated by go generate; DO NOT EDIT.
bindings/system
Code generated by go generate; DO NOT EDIT.
Code generated by go generate; DO NOT EDIT.
bindings/volumes
Code generated by go generate; DO NOT EDIT.
Code generated by go generate; DO NOT EDIT.
channel
Package channel provides helper structs/methods/funcs for working with channels Proxy from an io.Writer to a channel: w := channel.NewWriter(make(chan []byte, 10)) go func() { w.Write([]byte("Hello, World")) }() fmt.Println(string(<-w.Chan())) w.Close() Use of the constructor is required to initialize the channel.
Package channel provides helper structs/methods/funcs for working with channels Proxy from an io.Writer to a channel: w := channel.NewWriter(make(chan []byte, 10)) go func() { w.Write([]byte("Hello, World")) }() fmt.Println(string(<-w.Chan())) w.Close() Use of the constructor is required to initialize the channel.
ctime
Package ctime includes a utility for determining file-creation times.
Package ctime includes a utility for determining file-creation times.
domain/entities/types
copied from github.com/docker/docker/api/types copied from github.com/docker/docker/api/types
copied from github.com/docker/docker/api/types copied from github.com/docker/docker/api/types
env
Package for processing environment variables.
Package for processing environment variables.
hooks
Package hooks implements hook configuration and handling for CRI-O and libpod.
Package hooks implements hook configuration and handling for CRI-O and libpod.
hooks/0.1.0
Package hook is the 0.1.0 hook configuration structure.
Package hook is the 0.1.0 hook configuration structure.
hooks/1.0.0
Package hook is the 1.0.0 hook configuration structure.
Package hook is the 1.0.0 hook configuration structure.
hooks/exec
Package exec provides utilities for executing Open Container Initiative runtime hooks.
Package exec provides utilities for executing Open Container Initiative runtime hooks.
k8s.io/apimachinery/pkg/apis/meta/v1
Package v1 contains API types that are common to all versions.
Package v1 contains API types that are common to all versions.
ps
rootlessport
Package rootlessport provides reexec for RootlessKit-based port forwarder.
Package rootlessport provides reexec for RootlessKit-based port forwarder.
signal
Signal handling for Linux only.
Signal handling for Linux only.
util/camelcase
Package camelcase is a micro package to split the words of a camelcase type string into a slice of words.
Package camelcase is a micro package to split the words of a camelcase type string into a slice of words.
test
e2e

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